4.7 Article

Sensitive Water-Soluble Fluorescent Probe Based on Umpolung and Aggregation-Induced Emission Strategies for Selective Detection of Hg2+ in Living Cells and Zebrafish

Journal

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
Volume 67, Issue 8, Pages 2377-2383

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jafc.8b06895

Keywords

umpolung; aggregation-induced emission; fluorescent probe; detection of Hg2+; cell imaging; zebrafish imaging

Funding

  1. National Natural Science Foundation of China [81671756]
  2. Key Research Project of Science and Technology Foundation of Hunan Province [201751(2093)]
  3. State Key Laboratory of Drug Research [SIMM1803KF-14]
  4. Fundamental Research Funds for the Central Universities of Central South University [2018zzts041]

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Using Hg2+-induced umpolung reaction and aggregation induced emission (AlE), we have rationally developed a water-soluble fluorescent probe 2,2'-(((4-(4,5-bis(4-methoxyphenyl)-1-phenyl-1H-imidazol-2-yl)phenyl)methylene)bis-(sulfanediyl))diethanol(MPIPBS) for Hg2+ detection. MPIPBS was found to have high selectivity and sensitivity toward Hg2+ detection. The mechanism of MPIPBS response to Hg2+ was verified by H-1 NMR titration, HPLC, and HAMS spectroscopy. The detection limit was examined to be 1.45 nM, which is lower than most reported probes for Hg2+. Taking advantage of excellent optical properties of AlEgen, a paper based sensor for Hg2+ detection was fabricated by immobilizing the MPIPBS on Waterman test paper. Meanwhile, MPIPBS showed satisfactory analytical performance in real water and urine samples. Further, thanks to the high water solubility, cell membrane permeability and low cytotoxicity, MPIPBS was further used to detect Hg2+ both in living cells and zebrafish. We anticipate that the prepared probe was available to detect Hg2+ in environment and biosamples.

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